


Fairchild (onsemi)
NC7S00M5
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NC7S00M5 Description
NC7S00M5 Description
The NC7S00M5 from Fairchild Semiconductor (onsemi) is a high-performance single-channel 2-input NAND gate in a compact SC74A (SOT-753) surface-mount package. Designed for low-voltage operation (2V–6V), it delivers a maximum propagation delay of 17ns at 6V with a 50pF load, making it suitable for high-speed digital logic applications. With quiescent current as low as 1µA, it is optimized for power-sensitive designs. The device is ROHS3 compliant and adheres to REACH environmental standards, ensuring reliability in modern electronics.
NC7S00M5 Features
- Low-Voltage Operation: Supports 2V–6V supply range, ideal for battery-powered and portable devices.
- High-Speed Performance: 17ns propagation delay at 6V ensures efficient signal processing.
- Low Power Consumption: 1µA max quiescent current minimizes energy waste in standby modes.
- Balanced Output Drive: 2.6mA output current (high/low) for stable signal integrity.
- Wide Logic Thresholds: 0.5V (low) / 1.5V (high) input levels enhance noise immunity.
- Compact & Robust: SC74A package saves board space while being MSL-undefined (vendor-specific handling).
- Compliance: ROHS3, REACH Unaffected, EAR99 for global market suitability.
NC7S00M5 Applications
- Portable Electronics: Ideal for smartphones, wearables, and IoT devices due to low voltage/power needs.
- Signal Conditioning: Used in glitch filtering and logic level shifting circuits.
- Embedded Systems: Integrates into microcontrollers and FPGAs for peripheral interfacing.
- Automotive & Industrial: Reliable performance in harsh environments (within voltage limits).
- Consumer Electronics: Enables compact logic solutions in gaming consoles and smart home devices.
Conclusion of NC7S00M5
The NC7S00M5 stands out for its ultra-low power consumption, high-speed operation, and miniature footprint, making it a versatile choice for modern digital designs. Its wide supply range and robust compliance cater to diverse industries, from consumer tech to industrial automation. Engineers benefit from its efficiency, reliability, and space-saving design, positioning it as a superior alternative to traditional NAND gates in constrained or power-critical applications.



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